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Turbulent Mixing, Internal Waves, and Intrusions: Temporal and Spatial Variability of Resource Supply and Metabolic Activity in Lakes

Turbulent Mixing, Internal Waves, and Intrusions: Temporal and Spatial Variability of Resource Supply and Metabolic Activity in Lakes
湍流混合、内波和入侵:湖泊资源供应和代谢活动的时空变化
批准号:
0640953
负责人:
Sally MacIntyre
金额:
$0.0万
依托单位国家:
美国
项目类别:
Continuing Grant
财政年份:
2007
资助国家:
美国
项目状态:
已结题
起止时间:
2007-04-01 至 2011-03-31

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中文摘要
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英文摘要
Non-Technical AbstractDEB 0640953: Turbulent Mixing, Internal Waves, and Intrusions: Temporal and Spatial Variability of Resource Supply and Metabolic Activity in LakesSally McIntyre, University of California at Santa BarbaraA lake's overall biological productivity depends on the supply of nutrients and light. Turbulence, which mediates rates of supply, is intensified when frontal systems with increased winds pass through a region and over a lake surface. The amplitude of internal waves, whose breaking causes turbulence, increases and varies with the slope characteristics of the lake's bottom. In addition, frontal systems bring precipitation that induces stream inflows which spread into lakes at various depths. The proposed work will build upon this conceptual knowledge to design and conduct experiments in order to detect hot spots where solute fluxes and metabolic activity are intensified, and accurately quantify bacterial and phytoplankton productivity. Linkages between weather patterns, hydrodynamics, and biological activity will be established and will enable accurate predictions of the responses of lakes of various sizes and in different geographic areas to changes in climate.The hydrodynamics of lakes influence biological and biogeochemical processes in a multitude of ways, yet the field of physical limnology is under-represented in the United States. The proposed work will contribute to the development of students and scientists with training in physical limnology. The results will also be disseminated as conceptual knowledge, computer software, and models. New techniques will include the transmission and analysis of data from moored instrumentation in the lakes in real time.
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